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As structural engineers move further into the age of digital
com-putation and rely more heavily on computers to solve problems,
it remains paramount that they understand the basic mathemat-ics
and engineering principles used to design and analyze build-ing
structures. The link between the basic concepts and appli-cation to
real world problems is one of the most challenging learning
endeavors that structural engineers face. The primary purpose of
Numerical Structural Analysis is to assist structural engineering
students with developing the abil-ity to solve complex structural
analysis problems. This book will cover numerical techniques to
solve mathematical formulations, which are necessary in developing
the analysis procedures for structural engineering. Once the
numerical formulations are un-derstood, engineers can then develop
structural analysis meth-ods that use these techniques. This will
be done primarily with matrix structural stiffness procedures.
Finally, advanced stiffness topics will be developed and presented
to solve unique struc-tural problems, including member end
releases, non-prismatic, shear, geometric, and torsional stiffness.
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